Life cycle assessment (LCA) is used to estimate a product’s environmental impact. Using LCA during the earlier stages of design may produce erroneous results since information available on the product’s lifecycle is typically incomplete at these stages. The resulting uncertainty must be accounted for in the decision-making process. This paper proposes a method for estimating the environmental impact of a product’s life cycle and the associated degree of uncertainty of that impact using information generated during the design process. Total impact is estimated based on aggregation of individual product life cycle processes impacts. Uncertainty estimation is based on assessing the mismatch between the information required and the information available about the product life cycle in each uncertainty category, as well as their integration. The method is evaluated using pre-defined scenarios with varying uncertainty.
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September 2010
Research Papers
A method for Estimating the Degree of Uncertainty With Respect to Life Cycle Assessment During Design
Srinivas Kota,
Srinivas Kota
Centre for Product Design and Manufacturing,
e-mail: srinivas@cpdm.iisc.ernet.in
Indian Institute of Science
, Bangalore 560012, India
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Amaresh Chakrabarti
Amaresh Chakrabarti
Centre for Product Design and Manufacturing,
e-mail: ac123@cpdm.iisc.ernet.in
Indian Institute of Science
, Bangalore 560012, India
Search for other works by this author on:
Srinivas Kota
Centre for Product Design and Manufacturing,
Indian Institute of Science
, Bangalore 560012, Indiae-mail: srinivas@cpdm.iisc.ernet.in
Amaresh Chakrabarti
Centre for Product Design and Manufacturing,
Indian Institute of Science
, Bangalore 560012, Indiae-mail: ac123@cpdm.iisc.ernet.in
J. Mech. Des. Sep 2010, 132(9): 091007 (9 pages)
Published Online: September 16, 2010
Article history
Received:
December 30, 2009
Revised:
July 8, 2010
Online:
September 16, 2010
Published:
September 16, 2010
Citation
Kota, S., and Chakrabarti, A. (September 16, 2010). "A method for Estimating the Degree of Uncertainty With Respect to Life Cycle Assessment During Design." ASME. J. Mech. Des. September 2010; 132(9): 091007. https://doi.org/10.1115/1.4002163
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